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Lipid Nanoparticles Elicit Reactogenicity and Sickness Behavior in Mice Via Toll-Like Receptor 4 and Myeloid Differentiation Protein 88 Axis

反应性 TLR4型 Toll样受体 背景(考古学) 细胞生物学 受体 模式识别受体 信号转导 免疫学 医学 生物 先天免疫系统 化学 免疫系统 免疫原性 生物化学 古生物学
作者
Tetiana Korzun,Abraham S. Moses,Antony Jozić,Vladislav Grigoriev,Samuel S. Newton,Jeonghwan Kim,Parham Diba,Ariana Sattler,Peter R. Levasseur,Ngoc Le,Prem Singh,Kongbrailatpam Shitaljit Sharma,Yoon Tae Goo,Babak Mamnoon,Constanze Raitmayr,Ana Paula Mesquita Souza,Olena Taratula,Gaurav Sahay,Oleh Taratula,Daniel L. Marks
出处
期刊:ACS Nano [American Chemical Society]
卷期号:18 (36): 24842-24859 被引量:12
标识
DOI:10.1021/acsnano.4c05088
摘要

mRNA therapeutics encapsulated in lipid nanoparticles (LNPs) offer promising avenues for treating various diseases. While mRNA vaccines anticipate immunogenicity, the associated reactogenicity of mRNA-loaded LNPs poses significant challenges, especially in protein replacement therapies requiring multiple administrations, leading to adverse effects and suboptimal therapeutic outcomes. Historically, research has primarily focused on the reactogenicity of mRNA cargo, leaving the role of LNPs understudied in this context. Adjuvanticity and pro-inflammatory characteristics of LNPs, originating at least in part from ionizable lipids, may induce inflammation, activate toll-like receptors (TLRs), and impact mRNA translation. Knowledge gaps remain in understanding LNP-induced TLR activation and its impact on induction of animal sickness behavior. We hypothesized that ionizable lipids in LNPs, structurally resembling lipid A from lipopolysaccharide, could activate TLR4 signaling via MyD88 and TRIF adaptors, thereby propagating LNP-associated reactogenicity. Our comprehensive investigation utilizing gene ablation studies and pharmacological receptor manipulation proves that TLR4 activation by LNPs triggers distinct physiologically meaningful responses in mice. We show that TLR4 and MyD88 are essential for reactogenic signal initiation, pro-inflammatory gene expression, and physiological outcomes like food intake and body weight─robust metrics of sickness behavior in mice. The application of the TLR4 inhibitor TAK-242 effectively reduces the reactogenicity associated with LNPs by mitigating TLR4-driven inflammatory responses. Our findings elucidate the critical role of the TLR4-MyD88 axis in LNP-induced reactogenicity, providing a mechanistic framework for developing safer mRNA therapeutics and offering a strategy to mitigate adverse effects through targeted inhibition of this pathway.
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